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脊髓温度和皮肤温度对视前区神经元放电频率及热敏感性的影响。

The effect of spinal and skin temperatures on the firing rate and thermosensitivity of preoptic neurones.

作者信息

Boulant J A, Hardy J D

出版信息

J Physiol. 1974 Aug;240(3):639-60. doi: 10.1113/jphysiol.1974.sp010627.

Abstract
  1. In anaesthetized rabbits, preoptic single unit activity was recorded while preoptic, spinal cord and skin temperatures were independently manipulated.2. The units that were insensitive to preoptic temperature were characterized by low firing rates and also by a very low incidence of extrahypothalamic thermosensitivity.3. Thirty-seven units having positive coefficients to preoptic temperature were tested for their response to spinal or skin temperature. Of these, twenty-two units responded to extrahypothalamic temperature, seventeen with positive thermal coefficients. In addition, the incidence of extrahypothalamic thermosensitivity generally increased among the higher firing units.4. Twenty-two units had negative coefficients for preoptic temperature and were tested for their extrahypothalamic thermosensitivities. Of these, sixteen units had dual thermosensitivities, ten with negative coefficients for the extrahypothalamic temperatures. In addition, there was no correlation between the incidence of extrahypothalamic thermosensitivity and the level of firing rate.5. In the units having positive coefficients for preoptic temperature, an increased firing rate, due to extrahypothalamic temperature, generally resulted in a decreased preoptic thermosensitivity. Conversely, a decreased firing rate usually resulted in an increased preoptic thermosensitivity.6. In the units having negative coefficients for preoptic temperature, an increased firing rate, due to extrahypothalamic temperature, usually increased the preoptic thermosensitivity; while a decreased firing rate tended to decrease the sensitivity to preoptic temperature.
摘要
  1. 在麻醉的兔子中,记录视前区单个神经元的活动,同时对视前区、脊髓和皮肤温度进行独立调控。

  2. 对视前区温度不敏感的神经元具有低放电率以及下丘脑外热敏性发生率极低的特点。

  3. 对37个对视前区温度具有正系数的神经元进行脊髓或皮肤温度反应测试。其中,22个神经元对下丘脑外温度有反应,17个具有正热系数。此外,下丘脑外热敏性的发生率在较高放电率的神经元中通常会增加。

  4. 22个对视前区温度具有负系数的神经元接受下丘脑外热敏性测试。其中,16个神经元具有双重热敏性,10个对下丘脑外温度具有负系数。此外,下丘脑外热敏性的发生率与放电率水平之间没有相关性。

  5. 在对视前区温度具有正系数的神经元中,由于下丘脑外温度导致的放电率增加通常会使视前区热敏性降低。相反,放电率降低通常会导致视前区热敏性增加。

  6. 在对视前区温度具有负系数的神经元中,由于下丘脑外温度导致的放电率增加通常会增加视前区热敏性;而放电率降低往往会降低对视前区温度的敏感性。

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The rabbit diencephalon in stereotaxic coordinates.立体定位坐标下的兔间脑。
J Comp Neurol. 1954 Dec;101(3):801-24. doi: 10.1002/cne.901010307.
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Thermal regulation during water immersion.
J Appl Physiol. 1966 Sep;21(5):1577-85. doi: 10.1152/jappl.1966.21.5.1577.
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Effects of heating and cooling of the spinal cord on preoptic unit activity.
J Appl Physiol. 1970 Nov;29(5):675-83. doi: 10.1152/jappl.1970.29.5.675.
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Thermoregulatory responses of the cat to preoptic and environmental temperatures.
Am J Physiol. 1970 Jun;218(6):1575-82. doi: 10.1152/ajplegacy.1970.218.6.1575.
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Hypothalamic neuronal responses to peripheral and deep-body temperatures.
Am J Physiol. 1973 Dec;225(6):1371-4. doi: 10.1152/ajplegacy.1973.225.6.1371.

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